浙江农业科学 ›› 2025, Vol. 66 ›› Issue (6): 1322-1327.DOI: 10.16178/j.issn.0528-9017.20230631

• 粮食作物 • 上一篇    下一篇

不同形态氮素营养对四环素胁迫下水稻苗期生长的影响

陈敏1(), 孙罗明昇2, 沈佳铭3, 叶友翔4, 赵国华1   

  1. 1.嘉兴大学 生物与化学工程学院,浙江 嘉兴 314001
    2.浙江巨程钢瓶有限公司,浙江 衢州 324022
    3.中环清科(嘉兴)环境技术研究院有限公司,浙江 嘉兴 314001
    4.浙江国智星低碳科技有限公司,浙江 嘉兴 314001
  • 收稿日期:2023-06-07 出版日期:2025-06-11 发布日期:2025-06-23
  • 作者简介:陈敏(2002—),女,浙江嘉兴人,本科在读,E-mail:2392835829@qq.com
  • 基金资助:
    浙江省“尖兵”“领雁”研发攻关计划(2022C02035);浙江省自然科学基金资助项目(LTGN23D010001);嘉兴市产教融合“五个一批”(0221022)

Effects of different forms of nitrogen nutrition on the growth of rice seedlings under tetracycline stress

CHEN Min1(), SUN-LUO Mingsheng2, SHEN Jiaming3, YE Youxiang4, ZHAO Guohua1   

  1. 1. College of Biological, Chemical Sciences and Engineering, Jiaxing University, Jiaxing 314001, Zhejiang
    2. Zhejiang Jucheng Steel Cylinder Co., Ltd., Quzhou 324022, Zhejiang
    3. Zhonghuan Qingke (Jiaxing) Environmental Technology Research Institute Co., Ltd., Jiaxing 314001, Zhejiang
    4. Zhejiang Guozhixing Low Carbon Technology Co., Ltd., Jiaxing 314001, Zhejiang
  • Received:2023-06-07 Online:2025-06-11 Published:2025-06-23

摘要:

为了探讨不同形态氮素营养对四环素类抗生素胁迫下水稻苗期生长的影响,采用营养液培养方法,在 NH 4 +-N和 NO 3 --N不同氮素形态下,设置不同剂量四环素胁迫水平,研究了水稻干物质累积、根冠比、叶面积以及叶绿素含量和抗氧化酶活性的变化规律。结果表明,不同形态氮素营养能够调控四环素胁迫对水稻生长的影响。其中在低含量四环素胁迫时, NH 4 +-N有利于促进水稻生长,增加地上部和地下部干重。而 NO 3 --N处理下水稻地上部和地下部干重未受四环素含量的明显影响。随着四环素浓度增加, NO 3 --N处理下水稻叶绿素a和b含量呈降低趋势,但地上部和地下部全氮含量呈增加趋势;而 NH 4 +-N处理下叶绿素a和b含量和植株氮素累积量差异不显著,地上部和地下部全氮含量在低含量四环素胁迫时最高。随着四环素含量增加,不同形态氮素下水稻POD活性呈增加趋势,而SOD活性在 NH 4 +-N处理下变化不明显,在 NO 3 --N处理下甚至降低。由此可见,可以通过不同形态氮素营养来调控水稻植株对四环素类抗生素的胁迫作用。

关键词: 水稻, 氮素形态, 四环素, 干物质累积, 叶绿素

Abstract:

To investigate the effects of different forms of nitrogen nutrition on the growth of rice seedlings under tetracycline antibiotic stress, a nutrient solution culture method was employed. Under different nitrogen forms ( NH 4 +-N and NO 3 --N), various levels of tetracycline stress were applied to study the changes in dry matter accumulation, root-shoot ratio, leaf area, chlorophyll content, and antioxidant enzyme activities in rice. The results showed that different forms of nitrogen nutrition could regulate the impact of tetracycline stress on rice growth. Under low-dose tetracycline stress, NH 4 +-N was beneficial for promoting rice growth and increasing dry weight in both aboveground and underground parts. In contrast, under NO 3 --N treatment, the dry weight in both aboveground and underground parts was not significantly affected by tetracycline content. As the tetracycline content increased, the content of chlorophyll a and b decreased under NO 3 --N treatment, while the total nitrogen content in both aboveground and underground parts increased. Under NH 4 +-N treatment, the content of chlorophyll a and b and plant nitrogen accumulation did not show significant differences, with the highest total nitrogen content in both aboveground and underground parts observed under low-content tetracycline. As the tetracycline content increased, the POD activity in rice increased under different forms of nitrogen nutrition, while SOD activity showed no significant change under NH 4 +-N treatment and even decreased under NO 3 --N treatment. These findings suggest that the stress effects of tetracycline on rice plants can be regulated through different forms of nitrogen nutrition.

Key words: rice, nitrogen forms, tetracycline, dry matter accumulation, chlorophyll

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